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Reid Spencer361e5132004-11-12 20:37:43 +00001//===- lib/Linker/LinkModules.cpp - Module Linker Implementation ----------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the LLVM module linker.
11//
12// Specifically, this:
13// * Merges global variables between the two modules
14// * Uninit + Uninit = Init, Init + Uninit = Init, Init + Init = Error if !=
15// * Merges functions between two modules
16//
17//===----------------------------------------------------------------------===//
18
Reid Spencer9b0ddbb2004-11-14 23:27:04 +000019#include "llvm/Linker.h"
Reid Spencer361e5132004-11-12 20:37:43 +000020#include "llvm/Constants.h"
21#include "llvm/DerivedTypes.h"
22#include "llvm/Module.h"
23#include "llvm/SymbolTable.h"
24#include "llvm/Instructions.h"
25#include "llvm/Assembly/Writer.h"
26#include "llvm/System/Path.h"
27#include <iostream>
28#include <sstream>
29using namespace llvm;
30
31// Error - Simple wrapper function to conditionally assign to E and return true.
32// This just makes error return conditions a little bit simpler...
Reid Spencer361e5132004-11-12 20:37:43 +000033static inline bool Error(std::string *E, const std::string &Message) {
34 if (E) *E = Message;
35 return true;
36}
37
Reid Spencer2c4f9a42004-11-25 09:29:44 +000038// ToStr - Simple wrapper function to convert a type to a string.
Reid Spencer361e5132004-11-12 20:37:43 +000039static std::string ToStr(const Type *Ty, const Module *M) {
40 std::ostringstream OS;
41 WriteTypeSymbolic(OS, Ty, M);
42 return OS.str();
43}
44
45//
46// Function: ResolveTypes()
47//
48// Description:
49// Attempt to link the two specified types together.
50//
51// Inputs:
52// DestTy - The type to which we wish to resolve.
53// SrcTy - The original type which we want to resolve.
54// Name - The name of the type.
55//
56// Outputs:
57// DestST - The symbol table in which the new type should be placed.
58//
59// Return value:
60// true - There is an error and the types cannot yet be linked.
61// false - No errors.
62//
63static bool ResolveTypes(const Type *DestTy, const Type *SrcTy,
64 SymbolTable *DestST, const std::string &Name) {
65 if (DestTy == SrcTy) return false; // If already equal, noop
66
67 // Does the type already exist in the module?
68 if (DestTy && !isa<OpaqueType>(DestTy)) { // Yup, the type already exists...
69 if (const OpaqueType *OT = dyn_cast<OpaqueType>(SrcTy)) {
70 const_cast<OpaqueType*>(OT)->refineAbstractTypeTo(DestTy);
71 } else {
72 return true; // Cannot link types... neither is opaque and not-equal
73 }
74 } else { // Type not in dest module. Add it now.
75 if (DestTy) // Type _is_ in module, just opaque...
76 const_cast<OpaqueType*>(cast<OpaqueType>(DestTy))
77 ->refineAbstractTypeTo(SrcTy);
78 else if (!Name.empty())
79 DestST->insert(Name, const_cast<Type*>(SrcTy));
80 }
81 return false;
82}
83
84static const FunctionType *getFT(const PATypeHolder &TH) {
85 return cast<FunctionType>(TH.get());
86}
87static const StructType *getST(const PATypeHolder &TH) {
88 return cast<StructType>(TH.get());
89}
90
91// RecursiveResolveTypes - This is just like ResolveTypes, except that it
92// recurses down into derived types, merging the used types if the parent types
93// are compatible.
Reid Spencer361e5132004-11-12 20:37:43 +000094static bool RecursiveResolveTypesI(const PATypeHolder &DestTy,
95 const PATypeHolder &SrcTy,
96 SymbolTable *DestST, const std::string &Name,
97 std::vector<std::pair<PATypeHolder, PATypeHolder> > &Pointers) {
98 const Type *SrcTyT = SrcTy.get();
99 const Type *DestTyT = DestTy.get();
100 if (DestTyT == SrcTyT) return false; // If already equal, noop
101
102 // If we found our opaque type, resolve it now!
103 if (isa<OpaqueType>(DestTyT) || isa<OpaqueType>(SrcTyT))
104 return ResolveTypes(DestTyT, SrcTyT, DestST, Name);
105
106 // Two types cannot be resolved together if they are of different primitive
107 // type. For example, we cannot resolve an int to a float.
108 if (DestTyT->getTypeID() != SrcTyT->getTypeID()) return true;
109
110 // Otherwise, resolve the used type used by this derived type...
111 switch (DestTyT->getTypeID()) {
112 case Type::FunctionTyID: {
113 if (cast<FunctionType>(DestTyT)->isVarArg() !=
114 cast<FunctionType>(SrcTyT)->isVarArg() ||
115 cast<FunctionType>(DestTyT)->getNumContainedTypes() !=
116 cast<FunctionType>(SrcTyT)->getNumContainedTypes())
117 return true;
118 for (unsigned i = 0, e = getFT(DestTy)->getNumContainedTypes(); i != e; ++i)
119 if (RecursiveResolveTypesI(getFT(DestTy)->getContainedType(i),
120 getFT(SrcTy)->getContainedType(i), DestST, "",
121 Pointers))
122 return true;
123 return false;
124 }
125 case Type::StructTyID: {
126 if (getST(DestTy)->getNumContainedTypes() !=
127 getST(SrcTy)->getNumContainedTypes()) return 1;
128 for (unsigned i = 0, e = getST(DestTy)->getNumContainedTypes(); i != e; ++i)
129 if (RecursiveResolveTypesI(getST(DestTy)->getContainedType(i),
130 getST(SrcTy)->getContainedType(i), DestST, "",
131 Pointers))
132 return true;
133 return false;
134 }
135 case Type::ArrayTyID: {
136 const ArrayType *DAT = cast<ArrayType>(DestTy.get());
137 const ArrayType *SAT = cast<ArrayType>(SrcTy.get());
138 if (DAT->getNumElements() != SAT->getNumElements()) return true;
139 return RecursiveResolveTypesI(DAT->getElementType(), SAT->getElementType(),
140 DestST, "", Pointers);
141 }
142 case Type::PointerTyID: {
143 // If this is a pointer type, check to see if we have already seen it. If
144 // so, we are in a recursive branch. Cut off the search now. We cannot use
145 // an associative container for this search, because the type pointers (keys
146 // in the container) change whenever types get resolved...
Reid Spencer361e5132004-11-12 20:37:43 +0000147 for (unsigned i = 0, e = Pointers.size(); i != e; ++i)
148 if (Pointers[i].first == DestTy)
149 return Pointers[i].second != SrcTy;
150
151 // Otherwise, add the current pointers to the vector to stop recursion on
152 // this pair.
153 Pointers.push_back(std::make_pair(DestTyT, SrcTyT));
154 bool Result =
155 RecursiveResolveTypesI(cast<PointerType>(DestTy.get())->getElementType(),
156 cast<PointerType>(SrcTy.get())->getElementType(),
157 DestST, "", Pointers);
158 Pointers.pop_back();
159 return Result;
160 }
161 default: assert(0 && "Unexpected type!"); return true;
162 }
163}
164
165static bool RecursiveResolveTypes(const PATypeHolder &DestTy,
166 const PATypeHolder &SrcTy,
167 SymbolTable *DestST, const std::string &Name){
168 std::vector<std::pair<PATypeHolder, PATypeHolder> > PointerTypes;
169 return RecursiveResolveTypesI(DestTy, SrcTy, DestST, Name, PointerTypes);
170}
171
172
173// LinkTypes - Go through the symbol table of the Src module and see if any
174// types are named in the src module that are not named in the Dst module.
175// Make sure there are no type name conflicts.
Reid Spencer361e5132004-11-12 20:37:43 +0000176static bool LinkTypes(Module *Dest, const Module *Src, std::string *Err) {
177 SymbolTable *DestST = &Dest->getSymbolTable();
178 const SymbolTable *SrcST = &Src->getSymbolTable();
179
180 // Look for a type plane for Type's...
181 SymbolTable::type_const_iterator TI = SrcST->type_begin();
182 SymbolTable::type_const_iterator TE = SrcST->type_end();
183 if (TI == TE) return false; // No named types, do nothing.
184
185 // Some types cannot be resolved immediately because they depend on other
186 // types being resolved to each other first. This contains a list of types we
187 // are waiting to recheck.
188 std::vector<std::string> DelayedTypesToResolve;
189
190 for ( ; TI != TE; ++TI ) {
191 const std::string &Name = TI->first;
192 const Type *RHS = TI->second;
193
194 // Check to see if this type name is already in the dest module...
195 Type *Entry = DestST->lookupType(Name);
196
197 if (ResolveTypes(Entry, RHS, DestST, Name)) {
198 // They look different, save the types 'till later to resolve.
199 DelayedTypesToResolve.push_back(Name);
200 }
201 }
202
203 // Iteratively resolve types while we can...
204 while (!DelayedTypesToResolve.empty()) {
205 // Loop over all of the types, attempting to resolve them if possible...
206 unsigned OldSize = DelayedTypesToResolve.size();
207
208 // Try direct resolution by name...
209 for (unsigned i = 0; i != DelayedTypesToResolve.size(); ++i) {
210 const std::string &Name = DelayedTypesToResolve[i];
211 Type *T1 = SrcST->lookupType(Name);
212 Type *T2 = DestST->lookupType(Name);
213 if (!ResolveTypes(T2, T1, DestST, Name)) {
214 // We are making progress!
215 DelayedTypesToResolve.erase(DelayedTypesToResolve.begin()+i);
216 --i;
217 }
218 }
219
220 // Did we not eliminate any types?
221 if (DelayedTypesToResolve.size() == OldSize) {
222 // Attempt to resolve subelements of types. This allows us to merge these
223 // two types: { int* } and { opaque* }
224 for (unsigned i = 0, e = DelayedTypesToResolve.size(); i != e; ++i) {
225 const std::string &Name = DelayedTypesToResolve[i];
226 PATypeHolder T1(SrcST->lookupType(Name));
227 PATypeHolder T2(DestST->lookupType(Name));
228
229 if (!RecursiveResolveTypes(T2, T1, DestST, Name)) {
230 // We are making progress!
231 DelayedTypesToResolve.erase(DelayedTypesToResolve.begin()+i);
232
233 // Go back to the main loop, perhaps we can resolve directly by name
234 // now...
235 break;
236 }
237 }
238
239 // If we STILL cannot resolve the types, then there is something wrong.
240 // Report the warning and delete one of the names.
241 if (DelayedTypesToResolve.size() == OldSize) {
242 const std::string &Name = DelayedTypesToResolve.back();
243
244 const Type *T1 = SrcST->lookupType(Name);
245 const Type *T2 = DestST->lookupType(Name);
246 std::cerr << "WARNING: Type conflict between types named '" << Name
247 << "'.\n Src='";
248 WriteTypeSymbolic(std::cerr, T1, Src);
249 std::cerr << "'.\n Dest='";
250 WriteTypeSymbolic(std::cerr, T2, Dest);
251 std::cerr << "'\n";
252
253 // Remove the symbol name from the destination.
254 DelayedTypesToResolve.pop_back();
255 }
256 }
257 }
258
259
260 return false;
261}
262
263static void PrintMap(const std::map<const Value*, Value*> &M) {
264 for (std::map<const Value*, Value*>::const_iterator I = M.begin(), E =M.end();
265 I != E; ++I) {
266 std::cerr << " Fr: " << (void*)I->first << " ";
267 I->first->dump();
268 std::cerr << " To: " << (void*)I->second << " ";
269 I->second->dump();
270 std::cerr << "\n";
271 }
272}
273
274
Chris Lattner7391dde2004-11-16 17:12:38 +0000275// RemapOperand - Use ValueMap to convert references from one module to another.
276// This is somewhat sophisticated in that it can automatically handle constant
277// references correctly as well...
Reid Spencer361e5132004-11-12 20:37:43 +0000278static Value *RemapOperand(const Value *In,
Chris Lattner7391dde2004-11-16 17:12:38 +0000279 std::map<const Value*, Value*> &ValueMap) {
280 std::map<const Value*,Value*>::const_iterator I = ValueMap.find(In);
281 if (I != ValueMap.end()) return I->second;
Reid Spencer361e5132004-11-12 20:37:43 +0000282
Chris Lattner7391dde2004-11-16 17:12:38 +0000283 // Check to see if it's a constant that we are interesting in transforming.
Reid Spencer361e5132004-11-12 20:37:43 +0000284 if (const Constant *CPV = dyn_cast<Constant>(In)) {
285 if ((!isa<DerivedType>(CPV->getType()) && !isa<ConstantExpr>(CPV)) ||
286 isa<ConstantAggregateZero>(CPV))
Chris Lattner7391dde2004-11-16 17:12:38 +0000287 return const_cast<Constant*>(CPV); // Simple constants stay identical.
Reid Spencer361e5132004-11-12 20:37:43 +0000288
289 Constant *Result = 0;
290
291 if (const ConstantArray *CPA = dyn_cast<ConstantArray>(CPV)) {
292 std::vector<Constant*> Operands(CPA->getNumOperands());
293 for (unsigned i = 0, e = CPA->getNumOperands(); i != e; ++i)
Chris Lattner7391dde2004-11-16 17:12:38 +0000294 Operands[i] =cast<Constant>(RemapOperand(CPA->getOperand(i), ValueMap));
Reid Spencer361e5132004-11-12 20:37:43 +0000295 Result = ConstantArray::get(cast<ArrayType>(CPA->getType()), Operands);
296 } else if (const ConstantStruct *CPS = dyn_cast<ConstantStruct>(CPV)) {
297 std::vector<Constant*> Operands(CPS->getNumOperands());
298 for (unsigned i = 0, e = CPS->getNumOperands(); i != e; ++i)
Chris Lattner7391dde2004-11-16 17:12:38 +0000299 Operands[i] =cast<Constant>(RemapOperand(CPS->getOperand(i), ValueMap));
Reid Spencer361e5132004-11-12 20:37:43 +0000300 Result = ConstantStruct::get(cast<StructType>(CPS->getType()), Operands);
301 } else if (isa<ConstantPointerNull>(CPV) || isa<UndefValue>(CPV)) {
302 Result = const_cast<Constant*>(CPV);
303 } else if (isa<GlobalValue>(CPV)) {
Chris Lattner7391dde2004-11-16 17:12:38 +0000304 Result = cast<Constant>(RemapOperand(CPV, ValueMap));
Reid Spencer361e5132004-11-12 20:37:43 +0000305 } else if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(CPV)) {
306 if (CE->getOpcode() == Instruction::GetElementPtr) {
Chris Lattner7391dde2004-11-16 17:12:38 +0000307 Value *Ptr = RemapOperand(CE->getOperand(0), ValueMap);
Reid Spencer361e5132004-11-12 20:37:43 +0000308 std::vector<Constant*> Indices;
309 Indices.reserve(CE->getNumOperands()-1);
310 for (unsigned i = 1, e = CE->getNumOperands(); i != e; ++i)
311 Indices.push_back(cast<Constant>(RemapOperand(CE->getOperand(i),
Chris Lattner7391dde2004-11-16 17:12:38 +0000312 ValueMap)));
Reid Spencer361e5132004-11-12 20:37:43 +0000313
314 Result = ConstantExpr::getGetElementPtr(cast<Constant>(Ptr), Indices);
315 } else if (CE->getNumOperands() == 1) {
316 // Cast instruction
317 assert(CE->getOpcode() == Instruction::Cast);
Chris Lattner7391dde2004-11-16 17:12:38 +0000318 Value *V = RemapOperand(CE->getOperand(0), ValueMap);
Reid Spencer361e5132004-11-12 20:37:43 +0000319 Result = ConstantExpr::getCast(cast<Constant>(V), CE->getType());
320 } else if (CE->getNumOperands() == 3) {
321 // Select instruction
322 assert(CE->getOpcode() == Instruction::Select);
Chris Lattner7391dde2004-11-16 17:12:38 +0000323 Value *V1 = RemapOperand(CE->getOperand(0), ValueMap);
324 Value *V2 = RemapOperand(CE->getOperand(1), ValueMap);
325 Value *V3 = RemapOperand(CE->getOperand(2), ValueMap);
Reid Spencer361e5132004-11-12 20:37:43 +0000326 Result = ConstantExpr::getSelect(cast<Constant>(V1), cast<Constant>(V2),
327 cast<Constant>(V3));
328 } else if (CE->getNumOperands() == 2) {
329 // Binary operator...
Chris Lattner7391dde2004-11-16 17:12:38 +0000330 Value *V1 = RemapOperand(CE->getOperand(0), ValueMap);
331 Value *V2 = RemapOperand(CE->getOperand(1), ValueMap);
Reid Spencer361e5132004-11-12 20:37:43 +0000332
333 Result = ConstantExpr::get(CE->getOpcode(), cast<Constant>(V1),
334 cast<Constant>(V2));
335 } else {
336 assert(0 && "Unknown constant expr type!");
337 }
338
339 } else {
340 assert(0 && "Unknown type of derived type constant value!");
341 }
342
343 // Cache the mapping in our local map structure...
Chris Lattner7391dde2004-11-16 17:12:38 +0000344 ValueMap.insert(std::make_pair(In, Result));
Reid Spencer361e5132004-11-12 20:37:43 +0000345 return Result;
346 }
347
Chris Lattner7391dde2004-11-16 17:12:38 +0000348 std::cerr << "LinkModules ValueMap: \n";
349 PrintMap(ValueMap);
Reid Spencer361e5132004-11-12 20:37:43 +0000350
351 std::cerr << "Couldn't remap value: " << (void*)In << " " << *In << "\n";
352 assert(0 && "Couldn't remap value!");
353 return 0;
354}
355
356/// ForceRenaming - The LLVM SymbolTable class autorenames globals that conflict
357/// in the symbol table. This is good for all clients except for us. Go
358/// through the trouble to force this back.
359static void ForceRenaming(GlobalValue *GV, const std::string &Name) {
360 assert(GV->getName() != Name && "Can't force rename to self");
361 SymbolTable &ST = GV->getParent()->getSymbolTable();
362
363 // If there is a conflict, rename the conflict.
364 Value *ConflictVal = ST.lookup(GV->getType(), Name);
365 assert(ConflictVal&&"Why do we have to force rename if there is no conflic?");
366 GlobalValue *ConflictGV = cast<GlobalValue>(ConflictVal);
367 assert(ConflictGV->hasInternalLinkage() &&
368 "Not conflicting with a static global, should link instead!");
369
370 ConflictGV->setName(""); // Eliminate the conflict
371 GV->setName(Name); // Force the name back
372 ConflictGV->setName(Name); // This will cause ConflictGV to get renamed
373 assert(GV->getName() == Name && ConflictGV->getName() != Name &&
374 "ForceRenaming didn't work");
375}
376
Chris Lattnerfc61de32004-12-03 22:18:41 +0000377/// GetLinkageResult - This analyzes the two global values and determines what
378/// the result will look like in the destination module. In particular, it
379/// computes the resultant linkage type, computes whether the global in the
380/// source should be copied over to the destination (replacing the existing
381/// one), and computes whether this linkage is an error or not.
382static bool GetLinkageResult(GlobalValue *Dest, GlobalValue *Src,
383 GlobalValue::LinkageTypes &LT, bool &LinkFromSrc,
384 std::string *Err) {
385 assert((!Dest || !Src->hasInternalLinkage()) &&
386 "If Src has internal linkage, Dest shouldn't be set!");
387 if (!Dest) {
388 // Linking something to nothing.
389 LinkFromSrc = true;
390 LT = Src->getLinkage();
391 } else if (Src->isExternal()) {
392 // If Src is external or if both Src & Drc are external.. Just link the
393 // external globals, we aren't adding anything.
394 LinkFromSrc = false;
395 LT = Dest->getLinkage();
396 } else if (Dest->isExternal()) {
397 // If Dest is external but Src is not:
398 LinkFromSrc = true;
399 LT = Src->getLinkage();
400 } else if (Src->hasAppendingLinkage() || Dest->hasAppendingLinkage()) {
401 if (Src->getLinkage() != Dest->getLinkage())
402 return Error(Err, "Linking globals named '" + Src->getName() +
403 "': can only link appending global with another appending global!");
404 LinkFromSrc = true; // Special cased.
405 LT = Src->getLinkage();
406 } else if (Src->hasWeakLinkage() || Src->hasLinkOnceLinkage()) {
407 // At this point we know that Dest has LinkOnce, External or Weak linkage.
408 if (Dest->hasLinkOnceLinkage() && Src->hasWeakLinkage()) {
409 LinkFromSrc = true;
410 LT = Src->getLinkage();
411 } else {
412 LinkFromSrc = false;
413 LT = Dest->getLinkage();
414 }
415 } else if (Dest->hasWeakLinkage() || Dest->hasLinkOnceLinkage()) {
416 // At this point we know that Src has External linkage.
417 LinkFromSrc = true;
418 LT = GlobalValue::ExternalLinkage;
419 } else {
420 assert(Dest->hasExternalLinkage() && Src->hasExternalLinkage() &&
421 "Unexpected linkage type!");
422 return Error(Err, "Linking globals named '" + Src->getName() +
423 "': symbol multiply defined!");
424 }
425 return false;
426}
Reid Spencer361e5132004-11-12 20:37:43 +0000427
428// LinkGlobals - Loop through the global variables in the src module and merge
429// them into the dest module.
Chris Lattnerfc61de32004-12-03 22:18:41 +0000430static bool LinkGlobals(Module *Dest, Module *Src,
Reid Spencer361e5132004-11-12 20:37:43 +0000431 std::map<const Value*, Value*> &ValueMap,
432 std::multimap<std::string, GlobalVariable *> &AppendingVars,
433 std::map<std::string, GlobalValue*> &GlobalsByName,
434 std::string *Err) {
435 // We will need a module level symbol table if the src module has a module
436 // level symbol table...
437 SymbolTable *ST = (SymbolTable*)&Dest->getSymbolTable();
438
439 // Loop over all of the globals in the src module, mapping them over as we go
Chris Lattnerfc61de32004-12-03 22:18:41 +0000440 for (Module::giterator I = Src->gbegin(), E = Src->gend(); I != E; ++I) {
441 GlobalVariable *SGV = I;
Reid Spencer361e5132004-11-12 20:37:43 +0000442 GlobalVariable *DGV = 0;
443 // Check to see if may have to link the global.
444 if (SGV->hasName() && !SGV->hasInternalLinkage())
445 if (!(DGV = Dest->getGlobalVariable(SGV->getName(),
446 SGV->getType()->getElementType()))) {
447 std::map<std::string, GlobalValue*>::iterator EGV =
448 GlobalsByName.find(SGV->getName());
449 if (EGV != GlobalsByName.end())
450 DGV = dyn_cast<GlobalVariable>(EGV->second);
Chris Lattnerfc61de32004-12-03 22:18:41 +0000451 if (DGV)
452 // If types don't agree due to opaque types, try to resolve them.
453 RecursiveResolveTypes(SGV->getType(), DGV->getType(),ST, "");
Reid Spencer361e5132004-11-12 20:37:43 +0000454 }
455
Chris Lattnerfc61de32004-12-03 22:18:41 +0000456 if (DGV && DGV->hasInternalLinkage())
457 DGV = 0;
458
Reid Spencer361e5132004-11-12 20:37:43 +0000459 assert(SGV->hasInitializer() || SGV->hasExternalLinkage() &&
460 "Global must either be external or have an initializer!");
461
Chris Lattnerfc61de32004-12-03 22:18:41 +0000462 GlobalValue::LinkageTypes NewLinkage;
463 bool LinkFromSrc;
464 if (GetLinkageResult(DGV, SGV, NewLinkage, LinkFromSrc, Err))
465 return true;
Reid Spencer361e5132004-11-12 20:37:43 +0000466
Chris Lattnerfc61de32004-12-03 22:18:41 +0000467 if (!DGV) {
Reid Spencer361e5132004-11-12 20:37:43 +0000468 // No linking to be performed, simply create an identical version of the
469 // symbol over in the dest module... the initializer will be filled in
470 // later by LinkGlobalInits...
Reid Spencer361e5132004-11-12 20:37:43 +0000471 GlobalVariable *NewDGV =
472 new GlobalVariable(SGV->getType()->getElementType(),
473 SGV->isConstant(), SGV->getLinkage(), /*init*/0,
474 SGV->getName(), Dest);
475
476 // If the LLVM runtime renamed the global, but it is an externally visible
477 // symbol, DGV must be an existing global with internal linkage. Rename
478 // it.
479 if (NewDGV->getName() != SGV->getName() && !NewDGV->hasInternalLinkage())
480 ForceRenaming(NewDGV, SGV->getName());
481
482 // Make sure to remember this mapping...
483 ValueMap.insert(std::make_pair(SGV, NewDGV));
484 if (SGV->hasAppendingLinkage())
485 // Keep track that this is an appending variable...
486 AppendingVars.insert(std::make_pair(SGV->getName(), NewDGV));
Chris Lattnerfc61de32004-12-03 22:18:41 +0000487 } else if (DGV->hasAppendingLinkage()) {
Reid Spencer361e5132004-11-12 20:37:43 +0000488 // No linking is performed yet. Just insert a new copy of the global, and
489 // keep track of the fact that it is an appending variable in the
490 // AppendingVars map. The name is cleared out so that no linkage is
491 // performed.
492 GlobalVariable *NewDGV =
493 new GlobalVariable(SGV->getType()->getElementType(),
494 SGV->isConstant(), SGV->getLinkage(), /*init*/0,
495 "", Dest);
496
497 // Make sure to remember this mapping...
498 ValueMap.insert(std::make_pair(SGV, NewDGV));
499
500 // Keep track that this is an appending variable...
501 AppendingVars.insert(std::make_pair(SGV->getName(), NewDGV));
502 } else {
Chris Lattnerfc61de32004-12-03 22:18:41 +0000503 // Otherwise, perform the mapping as instructed by GetLinkageResult. If
504 // the types don't match, and if we are to link from the source, nuke DGV
505 // and create a new one of the appropriate type.
506 if (SGV->getType() != DGV->getType() && LinkFromSrc) {
507 GlobalVariable *NewDGV =
508 new GlobalVariable(SGV->getType()->getElementType(),
509 DGV->isConstant(), DGV->getLinkage());
510 Dest->getGlobalList().insert(DGV, NewDGV);
511 DGV->replaceAllUsesWith(ConstantExpr::getCast(NewDGV, DGV->getType()));
512 DGV->eraseFromParent();
513 NewDGV->setName(SGV->getName());
514 DGV = NewDGV;
515 }
516
517 DGV->setLinkage(NewLinkage);
518
519 if (LinkFromSrc) {
520 if (DGV->isConstant() && !SGV->isConstant())
521 return Error(Err, "Global Variable Collision on global '" +
522 SGV->getName() + "': variables differ in const'ness");
523 // Inherit const as appropriate
524 if (SGV->isConstant()) DGV->setConstant(true);
525 DGV->setInitializer(0);
526 } else {
527 if (SGV->isConstant() && !DGV->isConstant()) {
528 if (!DGV->isExternal())
529 return Error(Err, "Global Variable Collision on global '" +
530 SGV->getName() + "': variables differ in const'ness");
531 else
532 DGV->setConstant(true);
533 }
Chris Lattnera57c1052004-12-04 18:54:48 +0000534 SGV->setLinkage(GlobalValue::ExternalLinkage);
535 SGV->setInitializer(0);
Chris Lattnerfc61de32004-12-03 22:18:41 +0000536 }
537
538 ValueMap.insert(std::make_pair(SGV,
539 ConstantExpr::getCast(DGV,
540 SGV->getType())));
Reid Spencer361e5132004-11-12 20:37:43 +0000541 }
542 }
543 return false;
544}
545
546
547// LinkGlobalInits - Update the initializers in the Dest module now that all
548// globals that may be referenced are in Dest.
Reid Spencer361e5132004-11-12 20:37:43 +0000549static bool LinkGlobalInits(Module *Dest, const Module *Src,
550 std::map<const Value*, Value*> &ValueMap,
551 std::string *Err) {
552
553 // Loop over all of the globals in the src module, mapping them over as we go
Reid Spencer361e5132004-11-12 20:37:43 +0000554 for (Module::const_giterator I = Src->gbegin(), E = Src->gend(); I != E; ++I){
555 const GlobalVariable *SGV = I;
556
557 if (SGV->hasInitializer()) { // Only process initialized GV's
558 // Figure out what the initializer looks like in the dest module...
559 Constant *SInit =
Chris Lattner7391dde2004-11-16 17:12:38 +0000560 cast<Constant>(RemapOperand(SGV->getInitializer(), ValueMap));
Reid Spencer361e5132004-11-12 20:37:43 +0000561
562 GlobalVariable *DGV = cast<GlobalVariable>(ValueMap[SGV]);
563 if (DGV->hasInitializer()) {
564 if (SGV->hasExternalLinkage()) {
565 if (DGV->getInitializer() != SInit)
566 return Error(Err, "Global Variable Collision on '" +
567 ToStr(SGV->getType(), Src) +"':%"+SGV->getName()+
568 " - Global variables have different initializers");
569 } else if (DGV->hasLinkOnceLinkage() || DGV->hasWeakLinkage()) {
570 // Nothing is required, mapped values will take the new global
571 // automatically.
572 } else if (SGV->hasLinkOnceLinkage() || SGV->hasWeakLinkage()) {
573 // Nothing is required, mapped values will take the new global
574 // automatically.
575 } else if (DGV->hasAppendingLinkage()) {
576 assert(0 && "Appending linkage unimplemented!");
577 } else {
578 assert(0 && "Unknown linkage!");
579 }
580 } else {
581 // Copy the initializer over now...
582 DGV->setInitializer(SInit);
583 }
584 }
585 }
586 return false;
587}
588
589// LinkFunctionProtos - Link the functions together between the two modules,
590// without doing function bodies... this just adds external function prototypes
591// to the Dest function...
592//
593static bool LinkFunctionProtos(Module *Dest, const Module *Src,
594 std::map<const Value*, Value*> &ValueMap,
595 std::map<std::string, GlobalValue*> &GlobalsByName,
596 std::string *Err) {
597 SymbolTable *ST = (SymbolTable*)&Dest->getSymbolTable();
598
599 // Loop over all of the functions in the src module, mapping them over as we
600 // go
Reid Spencer361e5132004-11-12 20:37:43 +0000601 for (Module::const_iterator I = Src->begin(), E = Src->end(); I != E; ++I) {
602 const Function *SF = I; // SrcFunction
603 Function *DF = 0;
604 if (SF->hasName() && !SF->hasInternalLinkage()) {
605 // Check to see if may have to link the function.
606 if (!(DF = Dest->getFunction(SF->getName(), SF->getFunctionType()))) {
607 std::map<std::string, GlobalValue*>::iterator EF =
608 GlobalsByName.find(SF->getName());
609 if (EF != GlobalsByName.end())
610 DF = dyn_cast<Function>(EF->second);
611 if (DF && RecursiveResolveTypes(SF->getType(), DF->getType(), ST, ""))
612 DF = 0; // FIXME: gross.
613 }
614 }
615
616 if (!DF || SF->hasInternalLinkage() || DF->hasInternalLinkage()) {
617 // Function does not already exist, simply insert an function signature
618 // identical to SF into the dest module...
619 Function *NewDF = new Function(SF->getFunctionType(), SF->getLinkage(),
620 SF->getName(), Dest);
621
622 // If the LLVM runtime renamed the function, but it is an externally
623 // visible symbol, DF must be an existing function with internal linkage.
624 // Rename it.
625 if (NewDF->getName() != SF->getName() && !NewDF->hasInternalLinkage())
626 ForceRenaming(NewDF, SF->getName());
627
628 // ... and remember this mapping...
629 ValueMap.insert(std::make_pair(SF, NewDF));
630 } else if (SF->isExternal()) {
631 // If SF is external or if both SF & DF are external.. Just link the
632 // external functions, we aren't adding anything.
633 ValueMap.insert(std::make_pair(SF, DF));
634 } else if (DF->isExternal()) { // If DF is external but SF is not...
635 // Link the external functions, update linkage qualifiers
636 ValueMap.insert(std::make_pair(SF, DF));
637 DF->setLinkage(SF->getLinkage());
638
639 } else if (SF->hasWeakLinkage() || SF->hasLinkOnceLinkage()) {
640 // At this point we know that DF has LinkOnce, Weak, or External linkage.
641 ValueMap.insert(std::make_pair(SF, DF));
642
643 // Linkonce+Weak = Weak
644 if (DF->hasLinkOnceLinkage() && SF->hasWeakLinkage())
645 DF->setLinkage(SF->getLinkage());
646
647 } else if (DF->hasWeakLinkage() || DF->hasLinkOnceLinkage()) {
648 // At this point we know that SF has LinkOnce or External linkage.
649 ValueMap.insert(std::make_pair(SF, DF));
650 if (!SF->hasLinkOnceLinkage()) // Don't inherit linkonce linkage
651 DF->setLinkage(SF->getLinkage());
652
653 } else if (SF->getLinkage() != DF->getLinkage()) {
654 return Error(Err, "Functions named '" + SF->getName() +
655 "' have different linkage specifiers!");
656 } else if (SF->hasExternalLinkage()) {
657 // The function is defined in both modules!!
658 return Error(Err, "Function '" +
659 ToStr(SF->getFunctionType(), Src) + "':\"" +
660 SF->getName() + "\" - Function is already defined!");
661 } else {
662 assert(0 && "Unknown linkage configuration found!");
663 }
664 }
665 return false;
666}
667
668// LinkFunctionBody - Copy the source function over into the dest function and
669// fix up references to values. At this point we know that Dest is an external
670// function, and that Src is not.
Chris Lattner2f0557d2004-11-16 07:31:51 +0000671static bool LinkFunctionBody(Function *Dest, Function *Src,
Reid Spencer361e5132004-11-12 20:37:43 +0000672 std::map<const Value*, Value*> &GlobalMap,
673 std::string *Err) {
674 assert(Src && Dest && Dest->isExternal() && !Src->isExternal());
Reid Spencer361e5132004-11-12 20:37:43 +0000675
Chris Lattner7391dde2004-11-16 17:12:38 +0000676 // Go through and convert function arguments over, remembering the mapping.
Reid Spencer361e5132004-11-12 20:37:43 +0000677 Function::aiterator DI = Dest->abegin();
Chris Lattner2f0557d2004-11-16 07:31:51 +0000678 for (Function::aiterator I = Src->abegin(), E = Src->aend();
Reid Spencer361e5132004-11-12 20:37:43 +0000679 I != E; ++I, ++DI) {
680 DI->setName(I->getName()); // Copy the name information over...
681
682 // Add a mapping to our local map
Chris Lattner7391dde2004-11-16 17:12:38 +0000683 GlobalMap.insert(std::make_pair(I, DI));
Reid Spencer361e5132004-11-12 20:37:43 +0000684 }
685
Chris Lattner2f0557d2004-11-16 07:31:51 +0000686 // Splice the body of the source function into the dest function.
687 Dest->getBasicBlockList().splice(Dest->end(), Src->getBasicBlockList());
Reid Spencer361e5132004-11-12 20:37:43 +0000688
689 // At this point, all of the instructions and values of the function are now
690 // copied over. The only problem is that they are still referencing values in
691 // the Source function as operands. Loop through all of the operands of the
692 // functions and patch them up to point to the local versions...
693 //
694 for (Function::iterator BB = Dest->begin(), BE = Dest->end(); BB != BE; ++BB)
695 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
696 for (Instruction::op_iterator OI = I->op_begin(), OE = I->op_end();
697 OI != OE; ++OI)
Chris Lattner2f0557d2004-11-16 07:31:51 +0000698 if (!isa<Instruction>(*OI) && !isa<BasicBlock>(*OI))
Chris Lattner7391dde2004-11-16 17:12:38 +0000699 *OI = RemapOperand(*OI, GlobalMap);
700
701 // There is no need to map the arguments anymore.
Chris Lattnerf27514d2004-11-16 19:04:40 +0000702 for (Function::aiterator I = Src->abegin(), E = Src->aend(); I != E; ++I)
Chris Lattner7391dde2004-11-16 17:12:38 +0000703 GlobalMap.erase(I);
Reid Spencer361e5132004-11-12 20:37:43 +0000704
705 return false;
706}
707
708
709// LinkFunctionBodies - Link in the function bodies that are defined in the
710// source module into the DestModule. This consists basically of copying the
711// function over and fixing up references to values.
Chris Lattner2f0557d2004-11-16 07:31:51 +0000712static bool LinkFunctionBodies(Module *Dest, Module *Src,
Reid Spencer361e5132004-11-12 20:37:43 +0000713 std::map<const Value*, Value*> &ValueMap,
714 std::string *Err) {
715
716 // Loop over all of the functions in the src module, mapping them over as we
717 // go
Chris Lattner2f0557d2004-11-16 07:31:51 +0000718 for (Module::iterator SF = Src->begin(), E = Src->end(); SF != E; ++SF) {
Reid Spencer361e5132004-11-12 20:37:43 +0000719 if (!SF->isExternal()) { // No body if function is external
720 Function *DF = cast<Function>(ValueMap[SF]); // Destination function
721
722 // DF not external SF external?
723 if (DF->isExternal()) {
724 // Only provide the function body if there isn't one already.
725 if (LinkFunctionBody(DF, SF, ValueMap, Err))
726 return true;
727 }
728 }
729 }
730 return false;
731}
732
733// LinkAppendingVars - If there were any appending global variables, link them
734// together now. Return true on error.
Reid Spencer361e5132004-11-12 20:37:43 +0000735static bool LinkAppendingVars(Module *M,
736 std::multimap<std::string, GlobalVariable *> &AppendingVars,
737 std::string *ErrorMsg) {
738 if (AppendingVars.empty()) return false; // Nothing to do.
739
740 // Loop over the multimap of appending vars, processing any variables with the
741 // same name, forming a new appending global variable with both of the
742 // initializers merged together, then rewrite references to the old variables
743 // and delete them.
Reid Spencer361e5132004-11-12 20:37:43 +0000744 std::vector<Constant*> Inits;
745 while (AppendingVars.size() > 1) {
746 // Get the first two elements in the map...
747 std::multimap<std::string,
748 GlobalVariable*>::iterator Second = AppendingVars.begin(), First=Second++;
749
750 // If the first two elements are for different names, there is no pair...
751 // Otherwise there is a pair, so link them together...
752 if (First->first == Second->first) {
753 GlobalVariable *G1 = First->second, *G2 = Second->second;
754 const ArrayType *T1 = cast<ArrayType>(G1->getType()->getElementType());
755 const ArrayType *T2 = cast<ArrayType>(G2->getType()->getElementType());
756
757 // Check to see that they two arrays agree on type...
758 if (T1->getElementType() != T2->getElementType())
759 return Error(ErrorMsg,
760 "Appending variables with different element types need to be linked!");
761 if (G1->isConstant() != G2->isConstant())
762 return Error(ErrorMsg,
763 "Appending variables linked with different const'ness!");
764
765 unsigned NewSize = T1->getNumElements() + T2->getNumElements();
766 ArrayType *NewType = ArrayType::get(T1->getElementType(), NewSize);
767
768 // Create the new global variable...
769 GlobalVariable *NG =
770 new GlobalVariable(NewType, G1->isConstant(), G1->getLinkage(),
771 /*init*/0, First->first, M);
772
773 // Merge the initializer...
774 Inits.reserve(NewSize);
775 if (ConstantArray *I = dyn_cast<ConstantArray>(G1->getInitializer())) {
776 for (unsigned i = 0, e = T1->getNumElements(); i != e; ++i)
777 Inits.push_back(I->getOperand(i));
778 } else {
779 assert(isa<ConstantAggregateZero>(G1->getInitializer()));
780 Constant *CV = Constant::getNullValue(T1->getElementType());
781 for (unsigned i = 0, e = T1->getNumElements(); i != e; ++i)
782 Inits.push_back(CV);
783 }
784 if (ConstantArray *I = dyn_cast<ConstantArray>(G2->getInitializer())) {
785 for (unsigned i = 0, e = T2->getNumElements(); i != e; ++i)
786 Inits.push_back(I->getOperand(i));
787 } else {
788 assert(isa<ConstantAggregateZero>(G2->getInitializer()));
789 Constant *CV = Constant::getNullValue(T2->getElementType());
790 for (unsigned i = 0, e = T2->getNumElements(); i != e; ++i)
791 Inits.push_back(CV);
792 }
793 NG->setInitializer(ConstantArray::get(NewType, Inits));
794 Inits.clear();
795
796 // Replace any uses of the two global variables with uses of the new
797 // global...
798
799 // FIXME: This should rewrite simple/straight-forward uses such as
800 // getelementptr instructions to not use the Cast!
801 G1->replaceAllUsesWith(ConstantExpr::getCast(NG, G1->getType()));
802 G2->replaceAllUsesWith(ConstantExpr::getCast(NG, G2->getType()));
803
804 // Remove the two globals from the module now...
805 M->getGlobalList().erase(G1);
806 M->getGlobalList().erase(G2);
807
808 // Put the new global into the AppendingVars map so that we can handle
809 // linking of more than two vars...
810 Second->second = NG;
811 }
812 AppendingVars.erase(First);
813 }
814
815 return false;
816}
817
818
819// LinkModules - This function links two modules together, with the resulting
820// left module modified to be the composite of the two input modules. If an
821// error occurs, true is returned and ErrorMsg (if not null) is set to indicate
822// the problem. Upon failure, the Dest module could be in a modified state, and
823// shouldn't be relied on to be consistent.
Reid Spencerc4e31532004-12-13 03:00:16 +0000824bool
825Linker::LinkModules(Module *Dest, Module *Src, std::string *ErrorMsg) {
Reid Spencer361e5132004-11-12 20:37:43 +0000826 assert(Dest != 0 && "Invalid Destination module");
827 assert(Src != 0 && "Invalid Source Module");
828
829 if (Dest->getEndianness() == Module::AnyEndianness)
830 Dest->setEndianness(Src->getEndianness());
831 if (Dest->getPointerSize() == Module::AnyPointerSize)
832 Dest->setPointerSize(Src->getPointerSize());
Chris Lattnerb7f59162004-12-10 20:26:15 +0000833 if (Dest->getTargetTriple().empty())
834 Dest->setTargetTriple(Src->getTargetTriple());
Reid Spencer361e5132004-11-12 20:37:43 +0000835
836 if (Src->getEndianness() != Module::AnyEndianness &&
837 Dest->getEndianness() != Src->getEndianness())
838 std::cerr << "WARNING: Linking two modules of different endianness!\n";
839 if (Src->getPointerSize() != Module::AnyPointerSize &&
840 Dest->getPointerSize() != Src->getPointerSize())
841 std::cerr << "WARNING: Linking two modules of different pointer size!\n";
Chris Lattnerb7f59162004-12-10 20:26:15 +0000842 if (!Src->getTargetTriple().empty() &&
843 Dest->getTargetTriple() != Src->getTargetTriple())
844 std::cerr << "WARNING: Linking two modules of different target triples!\n";
845
Reid Spencer2c4f9a42004-11-25 09:29:44 +0000846 // Update the destination module's dependent libraries list with the libraries
Reid Spencer361e5132004-11-12 20:37:43 +0000847 // from the source module. There's no opportunity for duplicates here as the
848 // Module ensures that duplicate insertions are discarded.
849 Module::lib_iterator SI = Src->lib_begin();
850 Module::lib_iterator SE = Src->lib_end();
851 while ( SI != SE ) {
852 Dest->addLibrary(*SI);
853 ++SI;
854 }
855
856 // LinkTypes - Go through the symbol table of the Src module and see if any
857 // types are named in the src module that are not named in the Dst module.
858 // Make sure there are no type name conflicts.
Reid Spencer361e5132004-11-12 20:37:43 +0000859 if (LinkTypes(Dest, Src, ErrorMsg)) return true;
860
861 // ValueMap - Mapping of values from what they used to be in Src, to what they
862 // are now in Dest.
Reid Spencer361e5132004-11-12 20:37:43 +0000863 std::map<const Value*, Value*> ValueMap;
864
865 // AppendingVars - Keep track of global variables in the destination module
866 // with appending linkage. After the module is linked together, they are
867 // appended and the module is rewritten.
Reid Spencer361e5132004-11-12 20:37:43 +0000868 std::multimap<std::string, GlobalVariable *> AppendingVars;
869
870 // GlobalsByName - The LLVM SymbolTable class fights our best efforts at
871 // linking by separating globals by type. Until PR411 is fixed, we replicate
872 // it's functionality here.
873 std::map<std::string, GlobalValue*> GlobalsByName;
874
875 for (Module::giterator I = Dest->gbegin(), E = Dest->gend(); I != E; ++I) {
876 // Add all of the appending globals already in the Dest module to
877 // AppendingVars.
878 if (I->hasAppendingLinkage())
879 AppendingVars.insert(std::make_pair(I->getName(), I));
880
881 // Keep track of all globals by name.
882 if (!I->hasInternalLinkage() && I->hasName())
883 GlobalsByName[I->getName()] = I;
884 }
885
886 // Keep track of all globals by name.
887 for (Module::iterator I = Dest->begin(), E = Dest->end(); I != E; ++I)
888 if (!I->hasInternalLinkage() && I->hasName())
889 GlobalsByName[I->getName()] = I;
890
891 // Insert all of the globals in src into the Dest module... without linking
892 // initializers (which could refer to functions not yet mapped over).
Reid Spencer361e5132004-11-12 20:37:43 +0000893 if (LinkGlobals(Dest, Src, ValueMap, AppendingVars, GlobalsByName, ErrorMsg))
894 return true;
895
896 // Link the functions together between the two modules, without doing function
897 // bodies... this just adds external function prototypes to the Dest
898 // function... We do this so that when we begin processing function bodies,
899 // all of the global values that may be referenced are available in our
900 // ValueMap.
Reid Spencer361e5132004-11-12 20:37:43 +0000901 if (LinkFunctionProtos(Dest, Src, ValueMap, GlobalsByName, ErrorMsg))
902 return true;
903
904 // Update the initializers in the Dest module now that all globals that may
905 // be referenced are in Dest.
Reid Spencer361e5132004-11-12 20:37:43 +0000906 if (LinkGlobalInits(Dest, Src, ValueMap, ErrorMsg)) return true;
907
908 // Link in the function bodies that are defined in the source module into the
909 // DestModule. This consists basically of copying the function over and
910 // fixing up references to values.
Reid Spencer361e5132004-11-12 20:37:43 +0000911 if (LinkFunctionBodies(Dest, Src, ValueMap, ErrorMsg)) return true;
912
913 // If there were any appending global variables, link them together now.
Reid Spencer361e5132004-11-12 20:37:43 +0000914 if (LinkAppendingVars(Dest, AppendingVars, ErrorMsg)) return true;
915
916 // If the source library's module id is in the dependent library list of the
917 // destination library, remove it since that module is now linked in.
918 sys::Path modId;
919 modId.setFile(Src->getModuleIdentifier());
920 if (!modId.isEmpty())
921 Dest->removeLibrary(modId.getBasename());
922
923 return false;
924}
925
926// vim: sw=2